Department of Experimental Medicine, University of Genoa, 16132 Genoa, Italy.
Department of Pharmacy (DIFAR), University of Genoa, 16132 Genoa, Italy.
Cells. 2023 Jul 7;12(13):1802. doi: 10.3390/cells12131802.
Platelets are cellular elements that are physiologically involved in hemostasis, inflammation, thrombotic events, and various human diseases. There is a link between the activation of platelets and their metabolism. Platelets possess considerable metabolic versatility. Although the role of platelets in hemostasis and inflammation is known, our current understanding of platelet metabolism in terms of substrate preference is limited. Platelet activation triggers an oxidative metabolism increase to sustain energy requirements better than aerobic glycolysis alone. In addition, platelets possess extra-mitochondrial oxidative phosphorylation, which could be one of the sources of chemical energy required for platelet activation. This review aims to provide an overview of flexible platelet metabolism, focusing on the role of metabolic compartmentalization in substrate preference, since the metabolic flexibility of stimulated platelets could depend on subcellular localization and functional timing. Thus, developing a detailed understanding of the link between platelet activation and metabolic changes is crucial for improving human health.
血小板是生理上参与止血、炎症、血栓形成事件和各种人类疾病的细胞成分。血小板的激活与其代谢之间存在联系。血小板具有相当大的代谢多功能性。尽管已知血小板在止血和炎症中的作用,但我们目前对血小板代谢在底物偏好方面的理解是有限的。血小板的激活引发氧化代谢增加,以更好地维持能量需求,而不仅仅是有氧糖酵解。此外,血小板具有线粒体外的氧化磷酸化,这可能是血小板激活所需化学能量的来源之一。本综述旨在提供对灵活的血小板代谢的概述,重点关注代谢区室化在底物偏好中的作用,因为受刺激的血小板的代谢灵活性可能取决于亚细胞定位和功能时间。因此,深入了解血小板激活与代谢变化之间的联系对于改善人类健康至关重要。